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Managing maize under pest species competition: Is Bt (Bacillus thuringiensis) maize the solution?

机译:在害虫物种竞争下管理玉米: Bt(苏云金芽孢杆菌)玉米是解决方案吗?

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Transgenic crops that contain Cry genes from Bt (Bacillus thuringiensis) have been adopted by farmers over the last 17?yr. Unlike traditional broad‐spectrum chemical insecticides, Bt 's toxicity spectrum is relatively narrow and selective, which may indirectly benefit secondary insects that may become important pests. The economic damage caused by the rise of secondary pests could offset some or all of the benefits associated with the use of Bt varieties. We develop a bioeconomic model to analyze the interactions between primary and secondary insect populations and the impact of different management options on insecticide use and economic impact over time. Results indicate that some of the benefits associated with the adoption of genetically engineered insect resistant crops may be eroded when taking into account ecological dynamics. It is suggested that secondary pests could easily become key insect pests requiring additional measures, such as insecticide applications or stacked traits, to keep their populations under the economic threshold.
机译:在过去的17年中,农民采用了包含来自Bt(苏云金芽孢杆菌)Cry基因的转基因作物。与传统的广谱化学杀虫剂不同,Bt的毒性谱图相对狭窄且具有选择性,这可能间接地使可能成为重要害虫的次生昆虫受益。次生害虫增加造成的经济损失可能抵消与使用Bt品种相关的部分或全部利益。我们开发了一个生物经济模型来分析一级和二级昆虫种群之间的相互作用以及不同管理方案对杀虫剂使用的影响以及随着时间的推移对经济的影响。结果表明,当考虑到生态动态时,与采用转基因抗虫农作物有关的某些好处可能会被削弱。建议次生害虫很容易成为关键害虫,需要采取其他措施,例如使用杀虫剂或叠加性状,以使其种群保持在经济阈值以下。

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